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Innovation and prospect of geophysical technology in the exploration of deep oil and gas

机译:深层油气勘探中物探技术的创新与展望

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The global situation of distribution, reserves and production of deep oil and gas are examined systematically, the progress and exploration achievement of onshore China deep geophysical technology are summarized, and the challenges and developing direction of deep geophysical technology are pointed out. Aiming at the exploration of deep onshore strata in China, the article analyzes the key geophysical problems, such as low signal-to-noise ratio, low resolution, low imaging accuracy and low amplitude-preservation, in the exploration of deep clastic, carbonate, and volcanic reservoirs, and presents the corresponding technical countermeasures such as wide-line large-array 2-D acquisition, wide-azimuth and high-density 3-D acquisition, anisotropic pre-stack depth migration (PSDM), reverse-time migration (RTM), complex structure modeling, and quantitative reservoir prediction. The analysis from two aspects, imaging of deep complicated structures and prediction of deep complicated reservoirs, shows that wide-frequency, amplitude-preservation, high-accuracy and information integration are the challenges to and key issues in the geophysical technology. It is pointed out that wide-frequency seismic acquisition, rock physical modeling of complex reservoirs, high-accuracy prestack amplitude-preservation imaging, comprehensive evaluation of complex reservoirs, non-seismic techniques, and drilling steering with seismic data are the key geophysical techniques needed to be developed in the future.
机译:系统地研究了全球深层油气的分布,储量和生产情况,总结了中国陆上深层地球物理技术的进展和勘探成果,指出了深层地球物理技术的挑战和发展方向。针对我国深部陆上地层的勘探,分析了深碎屑岩,碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,低碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩,高碳酸盐岩等。和火山岩储层,并提出了相应的技术对策,例如宽线大阵列二维采集,宽方位角和高密度3-D采集,各向异性叠前深度偏移(PSDM),逆时偏移( RTM),复杂结构建模和定量储层预测。从深部复杂结构的成像和深部复杂储层的预测两个方面进行分析,表明宽频,保振幅,高精度和信息集成是地球物理技术的挑战和关键问题。需要指出的是,宽频地震采集,复杂储集层岩石物理建模,高精度叠前振幅保全成像,复杂储集层综合评价,非地震技术以及利用地震数据进行钻探导向是关键的地球物理技术。将来会发展。

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